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飞月轨道引力捕获设计方法研究 被引量:3
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作者 朱仁璋 俞南嘉 余梦伦 《宇航学报》 EI CSCD 北大核心 2000年第4期7-14,共8页
利用太阳引力摄动与月球绕飞设计的地月转移轨道 (飞月轨道 ) ,与霍曼转移相比 ,虽然飞行时间较长 (约三、四个月 ) ,但可显著节省速度增量 (可达 15 0米 /秒 ) ,对无人月球探测器尤为适合。应用平面圆型限制性四体问题动力学模型 ,选... 利用太阳引力摄动与月球绕飞设计的地月转移轨道 (飞月轨道 ) ,与霍曼转移相比 ,虽然飞行时间较长 (约三、四个月 ) ,但可显著节省速度增量 (可达 15 0米 /秒 ) ,对无人月球探测器尤为适合。应用平面圆型限制性四体问题动力学模型 ,选择从月球出发的初始条件。借助“地心距 时间曲线” ,从平面圆型限制性四体问题转换为一般的限制性四体问题。通过典型模拟计算 ,分析负向积分 (从月球轨道出发 )初始轨道参数及太阳方位对月球探测器轨迹的影响 。 展开更多
关键词 转移轨道 引力捕获 飞月轨道 球探测器
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Simulations of lunar equatorial regolith temperature profile based on measurements of Diviner on Lunar Reconnaissance Orbiter 被引量:1
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作者 RAN Zhen WANG ZhenZhan 《Science China Earth Sciences》 SCIE EI CAS 2014年第9期2232-2241,共10页
Lunar equatorial regolith temperature profiles were simulated using the half-limited solid heat conduction model. Based on the infrared data measured using the Diviner radiometer on the Lunar Reconnaissance Orbiter la... Lunar equatorial regolith temperature profiles were simulated using the half-limited solid heat conduction model. Based on the infrared data measured using the Diviner radiometer on the Lunar Reconnaissance Orbiter launched by the United Sates in June 2009, three factors influencing temperature profiles were analyzed. The infrared brightness temperature data from Diviner channel 7 were used to retrieve surface temperature. In simulating regolith temperature profiles, the retrieved temperature, rather than temperatures calculated from solar radiance at the lunar surface, were used as the input for surface temperature in solving the heat-conductive equation. The results showed that the bottom-layer temperature at depths of 6 m approached almost 246 K after 10000 iterations. The temperature was different to the temperature of 250 K at the same depth encountered in simulations using solar radiance. Simulations from both methods of surface temperatures over a lunar day gave similar variations. At lunar night, the temperature difference between the two was about 2 K; the main differences occurred when the solar elevation angle was very low when surface temperatures are largely affected by terrain topography. With no certainty in lunar temperature profiles at present, the advantage of the retrieval method using infrared sensor data as input to the boundary conditions in solving the lunar heat conduction equation is that simulations of surface temperature variations are more accurate. This is especially true in areas with large variations in terrain topography, where surface temperatures vary greatly because of shading from the sunlight. 展开更多
关键词 Diviner radiometer equation of heat conduction lunar temperature profile infrared brightness temperature
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